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Updated: May 28, 2026

The Use of Reverse Phase Protein Arrays (RPPA) to Explore Protein Expression Variation within Individual Renal Cell Cancers
Published on: January 22, 2013
Molecular heterogeneity of TFE3 activation in renal cell carcinomas
Stephan Macher-Goeppinger1, Wilfried Roth, Nina Wagener
1Institute of Pathology, University of Heidelberg, Heidelberg, Germany. stephan.goeppinger@med.uni-heidelberg.de
Abstract:
Renal cell carcinomas associated with Xp11.2 translocations have recently been identified as a distinct biological entity. The translocation results in the fusion of the transcription factor TFE3 to one of several different fusion partners including PRCC, PSF, NONO, ASPL or CTLC with consecutive overexpression of the chimeric protein. As the true frequency of these neoplasms as well as the biological properties of TFE3 activation in renal cell carcinomas are largely unknown, we have examined TFE3 expression as well as the underlying genetic alterations in a large, hospital-based series of renal cell carcinomas with long-term follow-up information. Out of a total of 876 tumours, TFE3 translocations were detected in five cases (0.6%). Three additional cases were identified in a second series of cases comprising of renal cell carcinomas developing in patients before the age of 50. However, using immunohistochemistry, 9% of all renal cell carcinomas showed some degree of TFE3 reactivity. Interestingly, these cases were associated with high nuclear grade, greater tumour extent and metastatic disease as well as an unfavourable patient outcome on uni- and multivariate analysis. Fluorescence in situ hybridisation (FISH) revealed TFE3 amplifications as an additional, novel mechanism leading to increased TFE3 expression levels. In conclusion, our data show that Xp11 translocation renal cell carcinomas are uncommon tumours accounting for <1% of adult renal cell carcinomas and that the diagnosis of Xp11 translocation renal cell carcinomas needs to be verified using molecular techniques. In turn, TFE3 overexpressing tumours show an aggressive behaviour and Xp11 translocation is only one of several possible underlying genomic alterations.
Insights
Xp11 translocation renal cell carcinomas are rare (<1% of adult cases) and require molecular confirmation. However, elevated TFE3 expression, regardless of cause, indicates aggressive tumors with poor patient outcomes.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Xp11.2 translocations define a distinct subtype of renal cell carcinoma (RCC).
- These translocations lead to fusion proteins, notably involving the TFE3 transcription factor, causing its overexpression.
- The frequency and biological impact of TFE3 alterations in RCC remain incompletely understood.
Purpose of the Study:
- To investigate the frequency of TFE3 alterations in a large RCC cohort.
- To analyze the clinical and biological characteristics of TFE3-altered RCCs.
- To identify novel mechanisms of TFE3 dysregulation in renal tumors.
Main Methods:
- Analysis of 876 adult RCCs and a series of early-onset RCCs.
- Detection of Xp11.2 translocations using molecular techniques.
- Immunohistochemistry for TFE3 expression assessment.
- Fluorescence in situ hybridization (FISH) for TFE3 amplification analysis.
Main Results:
- Xp11.2 translocations were found in 0.6% of adult RCCs.
- 9% of all RCCs exhibited TFE3 overexpression via immunohistochemistry.
- TFE3 overexpression correlated with high nuclear grade, advanced tumor stage, metastasis, and unfavorable patient outcomes.
- TFE3 amplifications were identified as a novel mechanism for TFE3 overexpression.
Conclusions:
- Xp11 translocation RCCs are uncommon in adults, necessitating molecular diagnostic confirmation.
- Elevated TFE3 expression, irrespective of the genetic mechanism (translocation or amplification), is associated with aggressive RCC behavior.
- TFE3 dysregulation represents a key driver in a subset of aggressive renal cell carcinomas.
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